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首页> 外文期刊>Electrochimica Acta >Synchronous crystal growth and etching optimization of Prussian blue from a single iron-source as high-rate cathode for sodium-ion batteries
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Synchronous crystal growth and etching optimization of Prussian blue from a single iron-source as high-rate cathode for sodium-ion batteries

机译:从单根铁源的同步晶体生长和拼搏优化钠离子电池的高速率阴极

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摘要

Prussian blue (PB) and its analogues (PBAs) have been considered as promising cathodes for room temperature sodium-ion batteries (SIBs) because of their rigid open framework and low-cost synthesis. Herein, we have synthesized slight-etching PB cubes with low amounts of coordinated water and [Fe(CN)(6)] vacancies using an optimized hydrothermal method with the aid of acid. Interestingly, synchronous crystal growth and etching processes are observed, accompanied by recrystallization behaviors during the etching process. With the increasing acid amount, yield of the as-prepared PB improves greatly. The acid etching mechanism is further clarified. Notably, such one-step acid-etching hydrothermal approach can realize the rational composition and architecture design of PB. The correlation between physical properties and cell performance of PB is systematically investigated. The optimized PB cubes with slight surface etching deliver a high reversible specific capacity of 99 mA h g(-1), a capacity retention of 79% for 500 cycles and 74 mA h g(-1) at a high current density of 1500 mA g(-1). Such superior rate capability and long cycle life are ascribed to the synergistic effects of the structure and morphology of PB, which possesses low amounts of coordinated water and [Fe(CN)(6)] vacancies, large unit cell volume, and slight-etching surface in the cubic structure, good crystallinity and uniform particle size distribution. (C) 2020 Elsevier Ltd. All rights reserved.
机译:普鲁士蓝(PB)及其类似物(PBA)被认为是室温钠离子电池(SIBS)的有希望的阴极,因为它们的刚性开放框架和低成本合成。在此,我们使用借助于酸的优化的水热法,合成具有少量配位水和[Fe(CN)(6)]空位的轻微蚀刻Pb立方体。有趣地,观察到同步晶体生长和蚀刻过程,伴随蚀刻过程中的重结晶行为。随着酸量的增加,制备的Pb的产率大大改善了。进一步澄清酸蚀刻机构。值得注意的是,这种一步酸蚀刻水热方法可以实现Pb的合理组成和架构设计。系统地研究了PB的物理性质和细胞性能之间的相关性。具有轻微表面蚀刻的优化PB立方体提供高可逆的特定容量为99 mA Hg(-1),500次循环的容量保留为79%,74 mA Hg(-1),高电流密度为1500 mA g( -1)。这种优越的速率能力和长循环寿命归因于Pb结构和形态的协同效应,其具有少量的协调水和[Fe(CN)(6)]空位,大单位细胞体积和轻微蚀刻立方结构中的表面,结晶度良好和均匀的粒度分布。 (c)2020 elestvier有限公司保留所有权利。

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